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No presente estudo evidenciou-se que:

O uso de jundiás em exposição in situ é viável no período de 96 horas, uma vez que os animais mostraram boa resistência a vários fatores estressores.

 Os biomarcadores utilizados neste trabalho se mostraram bastante úteis e responderam de forma variada em cada local onde os peixes foram expostos.

 O uso de IBR foi bastante útil para a interpretação geral dos resultados, uma vez que esse cálculo transforma todos os resultados dos biomarcadores em um único valor.

REFERÊNCIAS

AKAISHI, F. M. et al. (2004) Morphological and neurotoxicological fi ndings in tropical freshwater fish (Astyanax sp.) after water- borne and acute exposure to water soluble fraction (WSF) of crude oil. Archives of Environmental Contamination and Toxicology. 46: 244-253.

AMADO, L. L. et al. (2009) A method to measure total antioxidant capacity against peroxyl radicals in aquatic organisms: Application to evaluate microcystins toxicity. Science of the Total Environment. 407: 2115–2123.

BELIAEFF, B.; BURGEOUT, T. (2002) Integrated biomarker response: a useful tool for ecological risk assessment. Environmental Toxicology and Chemistry. 21:1316– 1322.

BENZIE, I.F.F. (1996) Lipid peroxidation: a review of causes, consequences, measurements and dietary influences. Internacional Journal of Food Sciences and Nutrition. 47: 233-261.

BOCKMANN, E.A. et al. (2003) Check list of the freshwater fishes of South and Central America. Porto Alegre: EDIPUCRS. 406-431.

CHIPARI-GOMES. A.R.: GOMES, L.C.: BALDISSEROTTO, B, (2000) Lethal temperatures for Rhamdia quelen larvae (Pimelodidae). Ciência Rual. 30: 1069- 1701.

GILTRAP, M. et al. (2013) Utilising caging techniques to investigate metal assimilation in Nucella lapillus, Mytilus edulis and Crassostrea gigas at three Irish coastal locations. Estuarine, Coastal and Shelf Science. 132: 77–86.

GLUSCZAK, L. et al. (2007) Acute effects of glyphosate herbicide on metabolic and enzymatic parameters of silver catfish (Rhamdia quelen). Comparative Biochemistry and Physiology - C Toxicology and Pharmacology. 146: 519–524.

GOMES, L.C.; GOLOMBIESKI, J.I.; GOMES, A.R.C. et al. (2000) Biologia do jundiá Rhamdia quelen (Teleostei, Pimelodidae). Ciência Rural. 30:179-185.

HAYES, J. D. et al. (2005) Glutathione transferases. Annual Review of Pharmacology and Toxicology. 45: 51–88.

IBGE. Instituto Brasileiro de Geografia e Estatística. Uso de agrotóxicos no Brasil cresce mais de duas vezes e meia em dez anos. (2015). Disponível em: < http://revistagloborural.globo.com/Noticias/noticia/2015/06/uso-de-agrotoxicos-no- brasil-cresce-mais-de-duas-vezes-e-meia-em-dez-anos-1.html>. Acesso em: 25 jan. 2017.

KELLEY, M. A. et al. (2011) In situ biomonitoring of caged, juvenile Chinook salmon (Oncorhynchus tshawytscha) in the Lower Duwamish Waterway. Marine Pollution Bulletin. 62: 2520–2532.

LACAZE, E. et al. (2011) DNA damage in caged Gammarus fossarum amphipods: A tool for freshwater genotoxicity assessment. Environmental Pollution. 159: 1682– 1691.

LEBRUN, J. D. et al. (2015) Seasonal variability and inter-species comparison of metal bioaccumulation in caged gammarids under urban diffuse contamination gradient: Implications for biomonitoring investigations. Science of the Total Environment. 511:501–508.

LORO, V. L. et al. (2015) Spatial and temporal biomarkers responses of Astyanax jacuhiensis (Cope, 1894) (Characiformes: Characidae) from the middle rio Uruguai, Brazil. Neotropical Ichthyology. 13: 569–578.

MARCHIORO, M.I.; BALDISSEROTTO, B. (1999) Sobrevivência de alevinos de jundiá (Rhamdia quelen Quoy & Gaimard, 1824) à variação de salinidade da água. Ciência Rural.29: 315-318.

MENEZES, C. C. et al. (2011) Roundup effects on oxidative stress parameters and recovery pattern of Rhamdia quelen. Archives of Environmental Contamination and Toxicology. 60: 665–671.

MERTEN, G. H.; MINELLA, J. P. (2002) Qualidade da água em bacias hidrográficas rurais: um desafio atual para sobrevivência futura. Agroecologia e Desenvolvimento Rural Sustentável. 3: 33-38.

MEURER, S.: ZANIBONI FILHO, E. (1997) Hábito alimentar do jundiá Rhamdia quelen (Pisces, Siluriformes, Pimelodidae), na região do alto rio Uruguai, In: ENCONTRO BRASILEIRO DE ICTIOLOGIA, 12., 1997, São Paulo. Anais. São Paulo: Sociedade Brasileira de Ictiologia, p. 29.

MURUSSI, C.R.; COSTA, M.; MENEZES. C. et al. (2015) Integrated assessment of biomarker response in carp (Cyprinus carpio) and silver catfish (Rhamdia quelen) exposed to clomazone. Archives of Environmental Contamination and Toxicology. 68:646–654.

NARAHARA, M.Y. et al. (1985) Relação peso-comprimento e fator de condição de Rhamdia hilarii (Valenciennes, 1840) (Obsteichthyes, Siluriformes, Pimolidae). Boletim do Instituto de Pesca.12: 13-22.

OIKARI, A. (2006) Caging techniques for field exposures of fish to chemical contaminants. Aquatic Toxicology. 78: 370–381.

PEREIRA, L.; FERNANDES, M. N.; MARTINEZ, C. B. R. (2013) Hematological and biochemical alterations in the fish Prochilodus lineatus caused by the herbicide clomazone. Environmental Toxicology and Pharmacology.36: 1–8.

PETERS, K.; BUNDSCHUH, M.; SCHÄFER, R. B.; (2013) Review on the effects of toxicants on freshwater ecosystem functions. Environmental Pollution. 180: 324-329.

PISOSCHI, A. M.; POP, A. (2015) The role of antioxidants in the chemistry of oxidative stress: A review. European Journal of Medicinal Chemistry. 97: 55-74.

PLAA, G.L. (1982) Present status: toxic substances in the environment. Canadian Journal of Physiology and Pharmacology. 60: 1010-1016.

ROEX, E.W.M., KEIJZERS, R., Van-Gestel, C.A.M. (2003) Acetylcholinesterase inhibition and increased food consumption rate in the zebrafish Danio rerio, after chronic exposure to parathion. Aquatic Toxicology. 64: 451-460.

SCARCIA P., CALAMANTE G., F. DE LA T. (2012) Biomarker Responses in Caged Carp (Cyprinus carpio) and Native Collected Fish (Leporinus obtusidens) in the Río de la Plata Estuary, Argentina. Environmental toxicology. 24: 296–303.

SILFVERGRIP, A.M.C. (1996) A sistematic revision of the neotropical catfish genus Rhamdia (Teleostei, Pimelodidae). 1996, 156f. PhD (Thesis) – Department of zoology – Stockholm University and Department of Vertebrate Zoology, Swedish Museum of Natural History, Stockholm, Sweden.

SOLOMON, K. R. et al. (2008) Effects of Atrazine on Fish , Amphibians , and Aquatic Reptiles : A Critical Review. Critical Reviews in Toxicology.38: 721–772.

SPADOTTO, C. A.; SCORZA Jr., R. P.; DORES, E. F. G. C.; GLEBER, L.; MORAES, D. A. C. (2010) Embrapa Monitoramento por Satélite. 78: 46.

TONI, C. et al. (2011) Exposure to tebuconazol in rice field and laboratory conditions induces oxidative stress in carp (Cyprinus carpio). Comparative biochemistry and physiology. Toxicology & pharmacology : CBP. 153: 128–32.

TRACHOOTHAM, D., LU, W., OGASAWARA, M.A., NILSA, R.D., HUANG, P. (2008) Redox regulation of cell survival. Antioxidants and Redox Signaling. 10: 1343-74.

TURJA, R. et al. (2015) The mussel caging approach in assessing biological effects of wastewater treatment plant discharges in the Gulf of Finland (Baltic Sea). Marine Pollution Bulletin. 97: 135–149.

VALKO, M., RHODES, C.J., MONCOL, J., IZAKOVIC, M., MAZUR, M. (2006) Free radicals, metals and antioxidants in oxidative stress-induced cancer. Chemico- Biological Interactions. 160: 1-40.

VIEIRA, C. E. D. et al. (2016) Multiple biomarker responses in Prochilodus lineatus subjected to short-term in situ exposure to streams from agricultural areas in Southern Brazil. Science of the Total Environment. 542: 44–56.

ZAGATTO, P. A., BERTOLETTI, E. (2008) Ecotoxicologia aquática: princípios e aplicações. Segunda edição. São Carlos: RiMa, p. 486.

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